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使用体外产气技术以KKU20发酵块茎替代豆粕的效果

The Effects of Fermenting Tubers with KKU20 as a Soybean Meal Replacement Using an In Vitro Gas Technique.

作者信息

Surakhai Thiraphat, Suntara Chanon, Srichompoo Pachara, Wanapat Metha, Chankaew Sompong, Cherdthong Anusorn

机构信息

Tropical Feed Resources Research and Development Center (TROFREC), Department of Animal Science, Faculty of Agriculture, Khon Kaen University, Khon Kaen 40002, Thailand.

Department of Agronomy, Faculty of Agriculture, Khon Kaen University, Khon Kaen 40002, Thailand.

出版信息

Animals (Basel). 2025 Aug 8;15(16):2328. doi: 10.3390/ani15162328.

Abstract

This study evaluated the effects of replacing soybean meal (SBM) with winged bean tuber () fermented using ruminal KKU20 on gas kinetics, ruminal fermentation, and degradability using the in vitro gas production technique. A 3 × 4 factorial arrangement in a completely randomized design was used. Factor A included three roughage-to-concentrate (R:C) ratios: 60:40, 50:50, and 40:60. Factor B consisted of four levels of SBM replacement with yeast-fermented winged bean tuber (YFWBT): 0%, 33%, 66%, and 100%. Fermentation with KKU20 increased the crude protein content of winged bean tuber by 13.32%. No significant interaction was found between the R:C ratio and YFWBT level for cumulative gas production at 24, 48, or 96 h ( > 0.05). Cumulative gas production at 96 h was not affected by either factor. However, at 24 and 48 h, gas production increased with higher proportions of concentrate ( < 0.05). Both the R:C ratio and YFWBT level significantly influenced pH and ammonia-nitrogen (NH-N) concentrations ( < 0.01). After 24 h, NH-N ranged from 7.66 to 13.76 mg/dL, rising to 16.44-16.63 mg/dL after 48 h. A significant interaction ( < 0.01) was observed for in vitro dry matter degradability (IVDMD) and in vitro organic matter degradability (IVOMD). Increasing concentrate levels along with YFWBT inclusion improved degradability at both incubation times. The highest IVDMD (64.49%) and IVOMD (65.81%) were recorded at 48 h in the 40:60 R:C ratio with 33% YFWBT. At 48 h, a significant interaction effect ( < 0.05) was also found for total volatile fatty acid (VFA) and propionic acid (C3) concentrations. Total VFA peaked in the 40:60 group with 33% YFWBT (104.31 mM), while the highest C3 concentration (26.22%) was observed in the same R:C group with 66% YFWBT. At 24 h, total VFA was significantly affected by the R:C ratio ( < 0.05), with the lowest values in the 60:40 group and increasing in response to higher concentrate and YFWBT levels. Incorporating YFWBT at 33% in diets with an R:C ratio of 40:60 optimized degradability, indicating its potential as a sustainable alternative to SBM in ruminant nutrition.

摘要

本研究采用体外产气技术,评估了用瘤胃KKU20发酵的四棱豆块茎替代豆粕对气体动力学、瘤胃发酵和降解率的影响。采用完全随机设计的3×4析因排列。因素A包括三个粗饲料与精饲料(R:C)比例:60:40、50:50和40:60。因素B由用酵母发酵的四棱豆块茎(YFWBT)替代豆粕的四个水平组成:0%、33%、66%和100%。用KKU20发酵使四棱豆块茎的粗蛋白含量提高了13.32%。在24、48或96小时时,R:C比例和YFWBT水平之间对于累积产气量未发现显著交互作用(P>0.05)。96小时时的累积产气量不受任何一个因素影响。然而,在24和48小时时,随着精饲料比例的提高产气量增加(P<0.05)。R:C比例和YFWBT水平均显著影响pH值和氨氮(NH₃-N)浓度(P<0.01)。24小时后,NH₃-N范围为7.66至13.76毫克/分升,48小时后升至16.44 - 16.63毫克/分升。体外干物质降解率(IVDMD)和体外有机物降解率(IVOMD)存在显著交互作用(P<0.01)。随着精饲料水平的增加以及添加YFWBT,在两个培养时间点降解率均有所提高。在40:60的R:C比例且含有33% YFWBT时,48小时记录到最高的IVDMD(64.49%)和IVOMD(65.81%)。在48小时时,总挥发性脂肪酸(VFA)和丙酸(C₃)浓度也发现有显著交互作用(P<0.05)。总VFA在含有33% YFWBT的40:60组达到峰值(104.31毫摩尔),而在相同R:C组且含有66% YFWBT时观察到最高的C₃浓度(26.22%)。在24小时时,总VFA受R:C比例显著影响(P<0.05),在60:40组中值最低,且随着精饲料和YFWBT水平的提高而增加。在R:C比例为40:60的日粮中添加33%的YFWBT可优化降解率,表明其在反刍动物营养中作为豆粕可持续替代物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5ef/12382940/817053189458/animals-15-02328-g001.jpg

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